Differences in the BOLD fMRI response to direct and indirect cortical stimulation in the rat
Open Access
- 15 April 2003
- journal article
- research article
- Published by Wiley in Magnetic Resonance in Medicine
- Vol. 49 (5) , 838-847
- https://doi.org/10.1002/mrm.10428
Abstract
Functional MRI (fMRI) exploits a relationship between neuronal activity, metabolism, and cerebral blood flow to functionally map the brain. We have developed a model of direct cortical stimulation in the rat that can be combined with fMRI and used to compare the hemodynamic responses to direct and indirect cortical stimulation. Unilateral electrical stimulation of the rat hindpaw motor cortex, via stereotaxically positioned carbon‐fiber electrodes, yielded blood oxygenation level‐dependent (BOLD) fMRI signal changes in both the stimulated and homotypic contralateral motor cortices. The maximal signal intensity change in both cortices was similar (stimulated = 3.7 ± 1.7%; contralateral = 3.2 ± 1.0%), although the response duration in the directly stimulated cortex was significantly longer (48.1 ± 5.7 sec vs. 19.0 ± 5.3 sec). Activation of the contralateral cortex is likely to occur via stimulation of corticocortical pathways, as distinct from direct electrical stimulation, and the response profile is similar to that observed in remote (e.g., forepaw) stimulation fMRI studies. Differences in the neuronal pool activated, or neurovascular mediators released, may account for the more prolonged BOLD response observed in the directly stimulated cortex. This work demonstrates the combination of direct cortical stimulation in the rat with fMRI and thus extends the scope of rodent fMRI into brain regions inaccessible to peripheral stimulation techniques. Magn Reson Med 49:838–847, 2003.Keywords
This publication has 43 references indexed in Scilit:
- Functional Magnetic Resonance ImagingPublished by Oxford University Press (OUP) ,2001
- Cerebral blood-flow changes induced by paired-pulse transcranial magnetic stimulation of the primary motor cortex.Journal of Neurophysiology, 2001
- Coupling and uncoupling of activity‐dependent increases of neuronal activity and blood flow in rat somatosensory cortexThe Journal of Physiology, 2001
- Regional differences in mechanisms of cerebral circulatory response to neuronal activationAmerican Journal of Physiology-Heart and Circulatory Physiology, 2001
- The impact of brain imaging technology on our understanding of motor function and dysfunctionCurrent Opinion in Neurobiology, 1999
- Exploring brain function with magnetic resonance imagingEuropean Journal of Radiology, 1999
- Investigation of the early response to rat forepaw stimulationMagnetic Resonance in Medicine, 1999
- Dynamic functional imaging of relative cerebral blood volume during rat forepaw stimulationMagnetic Resonance in Medicine, 1998
- Processing of information from different sources: spatial synaptic integration in the dendrites of vertebrate CNS neuronsTrends in Neurosciences, 1994
- Dynamic Magnetic Resonance Imaging of the Rat Brain during Forepaw StimulationJournal of Cerebral Blood Flow & Metabolism, 1994